Lynch Michael, Field Mark C, Goodson Holly V, Malik Harmit S, Pereira-Leal José B, Roos David S, Turkewitz Aaron P, Sazer Shelley
Department of Biology, Indiana University, Bloomington, IN 47405;
Division of Biological Chemistry and Drug Discovery, University of Dundee, Dundee DD1 5EH, United Kingdom;
Proc Natl Acad Sci U S A. 2014 Dec 2;111(48):16990-4. doi: 10.1073/pnas.1415861111. Epub 2014 Nov 17.
All aspects of biological diversification ultimately trace to evolutionary modifications at the cellular level. This central role of cells frames the basic questions as to how cells work and how cells come to be the way they are. Although these two lines of inquiry lie respectively within the traditional provenance of cell biology and evolutionary biology, a comprehensive synthesis of evolutionary and cell-biological thinking is lacking. We define evolutionary cell biology as the fusion of these two eponymous fields with the theoretical and quantitative branches of biochemistry, biophysics, and population genetics. The key goals are to develop a mechanistic understanding of general evolutionary processes, while specifically infusing cell biology with an evolutionary perspective. The full development of this interdisciplinary field has the potential to solve numerous problems in diverse areas of biology, including the degree to which selection, effectively neutral processes, historical contingencies, and/or constraints at the chemical and biophysical levels dictate patterns of variation for intracellular features. These problems can now be examined at both the within- and among-species levels, with single-cell methodologies even allowing quantification of variation within genotypes. Some results from this emerging field have already had a substantial impact on cell biology, and future findings will significantly influence applications in agriculture, medicine, environmental science, and synthetic biology.
生物多样性的所有方面最终都可追溯到细胞水平的进化修饰。细胞的这一核心作用引出了关于细胞如何工作以及细胞如何成为其现有状态的基本问题。尽管这两条探究路线分别属于细胞生物学和进化生物学的传统范畴,但目前仍缺乏对进化生物学与细胞生物学思想的全面综合。我们将进化细胞生物学定义为这两个同名领域与生物化学、生物物理学和群体遗传学的理论及定量分支的融合。其关键目标是对一般进化过程形成机械性的理解,同时具体地为细胞生物学注入进化视角。这一跨学科领域的全面发展有可能解决生物学不同领域的众多问题,包括在何种程度上选择、有效中性过程、历史偶然性以及化学和生物物理层面的限制决定了细胞内特征的变异模式。现在可以在种内和种间水平上研究这些问题,单细胞方法甚至能够对基因型内的变异进行量化。这一新兴领域的一些成果已经对细胞生物学产生了重大影响,未来的发现将显著影响在农业、医学、环境科学和合成生物学中的应用。